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Rapid, Selective, and Ultrasensitive Fluorimetric Analysis of Mercury and Copper Levels in Blood Using Bimetallic Gold-Silver Nanoclusters with 'Silver Effect'-Enhanced Red Fluorescence

机译:使用具有“银效应”的双金属金银纳米簇增强红色荧光,快速,选择性和超灵敏的荧光分析血液中的汞和铜

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Bimetallic alloying goldsilver nanoclusters (Au-AgNCs) have been synthesized by a one-pot biomineralization synthesis route at a vital molar ratio of Au/Ag precursors in the protein matrix. Unexpectedly, the prepared Au-AgNCs could exhibit dramatically enhanced red fluorescence, which is about 6.5-fold and 4.7-fold higher than that of common AuNCs and coreshell Au@AgNCs, respectively. A rapid, selective, and ultrasensitive fluorimetric method has thereby been developed using Au-AgNCs as fluorescent probes toward the separate detections of Hg2+ and Cu2+ ions in blood. The interactions of Au-AgNCs with Hg2+ and Cu2+ ions were systematically characterized by microscopy imaging, UVvis, and fluorescence measurements. It is demonstrated that the silver effect gives the Au-AgNCs probes not only greatly enhanced red fluorescence but also the strong capacity to specifically sense Cu2+ ions in addition to improved response to Hg2+ ions. Moreover, aided by a Cu2+ chelating agent, exclusive detection of Hg2+ ions could also be expected with the coexistence of a high level of Cu2+ ions, as well as reversible Cu2+ analysis by restoring the fluorescence of Au-AgNCs. Additionally, Au-AgNCs with strong red fluorescence could facilitate fluorimetric analysis with minimal interference from blood backgrounds. Such an Au-AgNCs-based fluorimetric method can allow for the selective analysis of Hg2+ and Cu2+ ions down to 0.30 nM and 0.60 nM in blood, respectively, promising a novel detection method to be applied in the clinical laboratory.
机译:双金属合金化金银纳米团簇(Au-AgNCs)已通过单罐生物矿化合成路线以蛋白质基质中Au / Ag前体的重要摩尔比合成。出乎意料的是,所制备的Au-AgNCs可以显着增强红色荧光,分别比普通AuNCs和核壳Au @ AgNCs高6.5倍和4.7倍。因此,已经开发了一种使用Au-AgNCs作为荧光探针的快速,选择性和超灵敏的荧光法,用于分别检测血液中的Hg2 +和Cu2 +离子。 Au-AgNCs与Hg2 +和Cu2 +离子的相互作用通过显微镜成像,UVvis和荧光测量系统地表征。结果表明,银的作用不仅使Au-AgNCs探针红色荧光增强,而且对Hg2 +离子的响应能力也得到增强,能够特异性地感应Cu2 +离子。此外,借助Cu2 +螯合剂,还可以预期与Hg2 +离子的独家检测与高水平Cu2 +离子的共存,以及通过恢复Au-AgNCs的荧光进行可逆的Cu2 +分析。此外,具有强红色荧光的Au-AgNC可以促进荧光分析,而不受血液背景的干扰。这种基于Au-AgNCs的荧光分析方法可以选择性地分析血液中分别低至0.30 nM和0.60 nM的Hg2 +和Cu2 +离子,有望在临床实验室中应用一种新颖的检测方法。

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